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months. The position is funded by Dr Gustav Mogull’s Royal Society University Research Fellowship, “Gravitational Waves from Worldline Quantum Field Theory”. Applicants should have a strong research record
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High Energy Physics Division, the successful candidate will contribute to the design, fabrication, and characterization of superconducting devices based on microstrip-coupled TES technology, with
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an interdisciplinary involvement around neutrino physics and gravitational waves. The position is supported through the "ToPROGRESS - Toward PRecisiOn enerGy neutRino mEaSurementS" project, financed by the “Label
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in deep collaboration with the Functional Materials Technology, Inverse Materials Design, Light-Matter Interaction Theory, Next Generation Energy systems, Oxide Single Crystal, and III-V Compound
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opportunity to work on the extremely timely “TWISST: Terahertz wave induced spin switching technology” project. TWISST aims to develop the scientific understanding needed to create a new generation of magnetic
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on the extremely timely “TWISST: Terahertz wave induced spin switching technology” project. TWISST aims to develop the scientific understanding needed to create a new generation of magnetic memory-devices
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/ General relativity , Gravitation Theory , Gravitational waves , particle physics around axions , Physics Beyond the Standard Model , Quantum Field Theory , Theoretical High Energy Physics , Theoretical
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for a Modern Economy programme) Project description: We offer 3 postdoctoral positions in the field of infrasound and seismic instrumentation for gravitational wave detectors and experimental particle
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Institut de Físiques d'Altes Energies (IFAE), Institut de Físiques d'Altes Energies (IFAE) Position ID: Institut de Físiques d'Altes Energies (IFAE)-Institut de Físiques d'Altes Energies (IFAE
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modelling, with a strong background in wave and energy propagation analysis, material characterization, and wave dynamics. 5. Familiarity with wave and energy propagation physics, including wave mode coupling